Related Experiment Video
Updated: May 13, 2026

An Analog Macroscopic Technique for Studying Molecular Hydrodynamic Processes in Dense Gases and Liquids
Published on: December 4, 2017
Synchronization of chaos in fully developed turbulence
Cristian C Lalescu1, Charles Meneveau, Gregory L Eyink
1Department of Applied Mathematics & Statistics, The Johns Hopkins University, Baltimore, Maryland 21218, USA. clalesc1@jhu.edu
Abstract:
We investigate chaos synchronization of small-scale motions in the three-dimensional turbulent energy cascade, via pseudospectral simulations of the incompressible Navier-Stokes equations. The modes of the turbulent velocity field below about 20 Kolmogorov dissipation lengths are found to be slaved to the chaotic dynamics of larger-scale modes. The dynamics of all dissipation-range modes can be recovered to full numerical precision by solving small-scale dynamical equations with the given large-scale solution as an input, regardless of initial condition. The synchronization rate exponent scales with the Kolmogorov dissipation time scale, with possible weak corrections due to intermittency. Our results suggest that all sub-Kolmogorov length modes should be fully recoverable from numerical simulations with standard, Kolmogorov-length grid resolutions.
Related Concept Videos
Turbulent Flow
Entropy
Navier–Stokes Equations
Laminar and Turbulent Flow
Forced Oscillations
Entropy Changes Accompanying Specific Processes

